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基于微流控芯片的线程作为评估乙酰胆碱酯酶活性的平台。

Thread-based microfluidic chips as a platform to assess acetylcholinesterase activity.

作者信息

Gonzalez Ariana, Gaines Michelle, Gomez Frank A

机构信息

Department of Chemistry and Biochemistry, California State University, Los Angeles, Los Angeles, CA, USA.

出版信息

Electrophoresis. 2017 Apr;38(7):996-1001. doi: 10.1002/elps.201600476. Epub 2017 Feb 3.

Abstract

In this paper, a microfluidic thread-based analytical device (μTAD) to assess the activity of acetylcholinesterase (AChE) via colorimetric analylsis is described. Fabrication of the device consists of two platforms, both with a nylon thread trifurcated into three channels terminating at open analysis sites at the end of the thread. 5,5'-Dithiobis-(2-nitrobenzoic acid) (DTNB) was spotted and dried on the analysis sites. Acetylthiocholine iodide (ATC) (or cysteine, Cys) is transported through an inlet channel of the nylon thread by capillary action due to the hydrophilic nature of nylon. AChE is transported through the other inlet channel and mixes with the ATC (or Cys) as they travel up to the analysis sites. As the solution reaches the analysis sites, an intense yellow color change occurs indicating the reaction of the thiol with DTNB to produce the yellow anion TNB . The sites are then dried, scanned, yielding a linear range of inverse yellow mean intensity versus substrate concentration. An IC value (1.74 nM) with a known inhibitor, neostigmine bromide (NB), is obtained on the device. The multiplex design enables triplicate data collection in a device that is easy to use. μTADs have great potential to be employed in a myriad of tests including point-of-care diagnostic devices for resource-challenged settings.

摘要

本文描述了一种基于微流体线的分析装置(μTAD),该装置通过比色分析来评估乙酰胆碱酯酶(AChE)的活性。该装置的制造由两个平台组成,两个平台均有一根尼龙线分成三个通道,通道在尼龙线末端的开放分析位点处终止。5,5'-二硫代双(2-硝基苯甲酸)(DTNB)被点样并干燥在分析位点上。由于尼龙的亲水性,碘化硫代乙酰胆碱(ATC)(或半胱氨酸,Cys)通过尼龙线的入口通道通过毛细作用传输。AChE通过另一个入口通道传输,并在它们向上到达分析位点时与ATC(或Cys)混合。当溶液到达分析位点时,会发生强烈的黄色变化,表明硫醇与DTNB反应生成黄色阴离子TNB。然后将这些位点干燥、扫描,得到黄色平均强度倒数与底物浓度的线性范围。在该装置上获得了已知抑制剂溴新斯的明(NB)的IC值(1.74 nM)。这种多重设计使得在一个易于使用的装置中能够进行三次重复数据收集。μTAD在包括资源匮乏地区的即时诊断设备在内的众多测试中具有巨大的应用潜力。

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